
Boiler Engineer Course
The Boiler Engineer Course gives you the technical knowledge and hands-on skills to operate, maintain, and optimize industrial boiler systems with confidence. From combustion theory and water chemistry to safety systems and energy management, every critical area is covered in depth. Whether you're advancing your career or preparing for licensure, this course delivers the practical expertise employers demand.
What you will learn:
You will learn how boiler systems work from the ground up, including thermodynamic principles, steam generation cycles, and combustion chemistry. You will master feedwater treatment programs, instrumentation, and control systems used in real plant environments. The course covers safety valve selection, low-water cutoff testing, and regulatory compliance requirements. You will also develop maintenance skills including tube cleaning, non-destructive testing, and refractory repair. Energy auditing, waste heat recovery, and boiler sequencing are addressed to help you reduce operating costs. Advanced topics include HRSG operation, emissions control, predictive maintenance, and professional report writing.
How you study in practice Boiler Engineer Course
How you practice Boiler Engineer Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFundamentals of Boiler Engineering
Fundamentals of Boiler Engineering
Lesson 1 • Introduction to Boiler Systems
Covers the purpose, classification, and industrial applications of boilers. Provides context for all subsequent technical content in the course.
Lesson 2 • Boiler Components and Assemblies
Identifies and describes all major boiler components and their functional roles. Builds the vocabulary needed for maintenance and operational tasks.
Lesson 3 • Thermodynamic Principles for Boilers
Introduces heat transfer, energy conversion, and steam properties essential to boiler operation. Connects physics fundamentals to practical boiler behavior.
Lesson 4 • Steam Generation Cycle
Explains the complete path of water through heating, evaporation, and steam delivery. Establishes the process flow students will monitor and control throughout the course.
Chapter 2HideHide detailsSee detailsCombustion Theory and Fuel Systems
Combustion Theory and Fuel Systems
Lesson 1 • Combustion Chemistry Essentials
Covers oxidation reactions, stoichiometry, and combustion products for common boiler fuels. Provides the chemical basis for optimizing burner performance.
Lesson 2 • Combustion Efficiency and Optimization
Introduces flue gas analysis, stack loss calculations, and tuning procedures. Directly supports fuel cost reduction and emissions compliance.
Lesson 3 • Burner Design and Operation
Describes burner types, atomization methods, and flame stability principles. Connects burner selection to fuel type and boiler design.
Lesson 4 • Fuel Types and Properties
Examines natural gas, fuel oil, coal, and biomass as boiler fuels. Compares heating values, handling requirements, and combustion characteristics.
Lesson 5 • Combustion Air and Draft Systems
Explains forced, induced, and natural draft systems and their effect on combustion efficiency. Students learn to balance airflow for optimal firing conditions.
Chapter 3HideHide detailsSee detailsBoiler Water Treatment and Chemistry
Boiler Water Treatment and Chemistry
Lesson 1 • Internal Chemical Treatment Programs
Explains oxygen scavengers, scale inhibitors, and sludge conditioners added to boiler water. Connects chemical dosing to boiler longevity and efficiency.
Lesson 2 • Blowdown Procedures and Control
Teaches surface and bottom blowdown techniques to manage dissolved and suspended solids. Balances water quality with heat and water conservation.
Lesson 3 • Corrosion and Scale Identification
Identifies types of boiler corrosion and scale deposits and their root causes. Enables engineers to diagnose water treatment failures from physical evidence.
Lesson 4 • Feedwater Pretreatment Systems
Covers softening, deaeration, and filtration processes used before water enters the boiler. Prevents scale and corrosion at the source.
Lesson 5 • Water Chemistry Fundamentals
Reviews pH, hardness, dissolved solids, and dissolved gases relevant to boiler water. Establishes the chemical baseline for all treatment decisions.
Chapter 4HideHide detailsSee detailsBoiler Instrumentation and Controls
Boiler Instrumentation and Controls
Lesson 1 • Safety Interlocks and Burner Management
Covers burner management systems, flame safeguard relays, and safety interlock logic. These systems prevent unsafe startup and operation conditions.
Lesson 2 • Combustion Control Systems
Describes parallel positioning, cross-limiting, and fully metered combustion control strategies. Ensures safe air-fuel ratio management across all firing rates.
Lesson 3 • Flow and Level Measurement
Explains feedwater flow meters, steam flow measurement, and drum level sensing. Accurate flow and level data drive feedwater control and safety systems.
Lesson 4 • Pressure and Temperature Measurement
Covers gauges, transmitters, and thermocouples used to monitor boiler operating conditions. Accurate measurement is the foundation of safe and efficient control.
Lesson 5 • Distributed Control and SCADA Integration
Introduces PLC-based control, HMI interfaces, and SCADA data logging for boiler plants. Prepares students for modern automated boiler room environments.
Chapter 5HideHide detailsSee detailsBoiler Safety Systems and Pressure Relief
Boiler Safety Systems and Pressure Relief
Lesson 1 • Safety Valve Testing and Maintenance
Describes manual lift testing, as-found testing, and replacement criteria for safety valves. Ensures valves will open reliably when needed.
Lesson 2 • Low-Water Fuel Cutoff Devices
Explains float, probe, and differential pressure low-water cutoff technologies and their testing. Low-water conditions are a leading cause of catastrophic boiler failure.
Lesson 3 • Regulatory Compliance and Inspection
Introduces boiler inspection requirements, authorized inspector roles, and documentation obligations. Compliance protects personnel and maintains operating certificates.
Lesson 4 • Safety Valve Principles and Selection
Covers spring-loaded safety valve design, set pressure, blowdown, and capacity requirements. Safety valves are the last line of defense against overpressure.
Lesson 5 • Pressure and Temperature Relief Devices
Covers pressure relief valves, rupture discs, and temperature-pressure relief for hot water boilers. Each device addresses a specific overpressure or overtemperature scenario.
Chapter 6HideHide detailsSee detailsSafe Boiler Operation and Startup Procedures
Safe Boiler Operation and Startup Procedures
Lesson 1 • Normal Operating Duties
Defines routine monitoring tasks, log-keeping, and adjustments during steady-state operation. Builds the discipline required for consistent, safe boiler management.
Lesson 2 • Normal and Emergency Shutdown
Explains planned shutdown sequences and emergency trip responses for various fault conditions. Correct shutdown prevents equipment damage and personnel hazards.
Lesson 3 • Pre-Startup Inspection Checklist
Establishes systematic checks of water level, valves, instruments, and fuel supply before firing. Prevents unsafe conditions from being carried into operation.
Lesson 4 • Operating Limits and Alarm Response
Defines normal operating ranges and the correct response to high-priority alarms. Connects alarm management to safe operating envelope maintenance.
Lesson 5 • Cold and Warm Startup Procedures
Covers purge sequences, light-off procedures, and gradual pressure raising for cold and warm starts. Thermal stress management is emphasized throughout.
Chapter 7HideHide detailsSee detailsBoiler Maintenance and Inspection
Boiler Maintenance and Inspection
Lesson 1 • Tube Cleaning and Inspection
Covers mechanical and chemical tube cleaning methods and visual inspection techniques. Clean tubes maintain heat transfer efficiency and prevent tube failures.
Lesson 2 • Boiler Layup and Preservation
Covers wet and dry layup procedures to protect boiler internals during extended outages. Proper preservation prevents corrosion damage during idle periods.
Lesson 3 • Refractory and Insulation Maintenance
Explains refractory inspection, repair, and replacement for furnace walls and burner quarls. Damaged refractory causes heat loss and structural risk.
Lesson 4 • Non-Destructive Testing Methods
Introduces ultrasonic, radiographic, magnetic particle, and dye penetrant testing for pressure parts. NDT detects flaws before they cause failures.
Lesson 5 • Preventive Maintenance Planning
Establishes maintenance schedules, work order systems, and spare parts management for boiler plants. Planned maintenance reduces unplanned outages and extends equipment life.
Chapter 8HideHide detailsSee detailsBoiler Efficiency and Energy Management
Boiler Efficiency and Energy Management
Lesson 1 • Steam System Optimization
Addresses steam trap management, distribution losses, and pressure optimization across the steam system. System-wide efficiency depends on minimizing losses beyond the boiler.
Lesson 2 • Heat Balance and Efficiency Calculations
Teaches input-output and heat loss methods for calculating boiler efficiency. Quantitative analysis drives targeted improvement actions.
Lesson 3 • Waste Heat Recovery Systems
Covers economizers, air preheaters, and condensate recovery to capture otherwise lost energy. Each system reduces fuel consumption and operating costs.
Lesson 4 • Energy Auditing for Boiler Plants
Introduces data collection, baseline establishment, and opportunity identification in a boiler plant energy audit. Audits provide the evidence base for capital investment decisions.
Lesson 5 • Load Management and Boiler Sequencing
Explains how to match boiler output to varying steam demand through sequencing and modulation. Proper load management prevents inefficient part-load operation.
Your valid completion certificate
This course is for you:
Plant operator: wants to move beyond routine tasks into engineering-level decision-making.
Maintenance technician: seeks formal knowledge to back up years of hands-on experience.
Facilities engineer: needs deeper boiler expertise to manage aging plant infrastructure confidently.
Career changer: transitioning from general mechanical trades into specialized industrial boiler work.
Junior engineer: building a technical foundation before sitting for a boiler license exam.
HVAC professional: expanding into high-pressure steam systems to broaden service capabilities.
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